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Analysis of Characteristics of Spent Fuels on Long-Term Dry Storage Condition KCI 등재 SCOPUS

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방사성폐기물학회지 (Journal of the Korean Radioactive Waste Society)
한국방사성폐기물학회 (Korean Radioactive Waste Society)
초록

Currently, the interim storage pools of spent fuels in South Korea are expected to become saturated from 2024. It is required to prepare an operation plan of a domestic dry storage facility during a long-term period, with the researches on safety evaluation methods. This study modified the FRAPCON code to predict the spent fuel integrity evaluation such as the axial cladding temperature, the hoop stress and hydrogen distribution in dry storage. The cladding temperature in dry storage was calculated using the COBRA-SFS code with the burnup information which was calculated using the FRAPCON code. The hoop stress was calculated using the ideal gas equation with spent fuel information such as rod internal pressure. Numerical analysis method was used to calculate the degree of hydrogen diffusion according to the hydrogen concentration and temperature distribution during a dry storage period. Before 50 years of dry storage, the cladding temperature and hoop stress decreased rapidly. However, after 50 years, they decreased gradually and the cladding temperature was below 400 K. The initial temperature distribution and hydrogen concentration showed a parabolic line, but hydrogen was transferred by the hydrogen concentration and temperature gradient over time.

목차
1. Introduction
2. Analysis Method
    2.1 Key factors of spent fuel characteristicsin dry storage condition
    2.2 Analysis method for behavior of spent fuelusing FRAPCON code
    2.3 Modification of FRAPCON code
3. Analysis Result
    3.1 Temperature prediction
    3.2 Hoop stress prediction
    3.3 Hydrogen concentration prediction
4. Conclusions
REFERENCES
저자
  • Suji Yoon(Korea Institute of Nuclear Safety)
  • Kwangheon Park(Kyung Hee University)
  • Hyungju Yun(Korea Radioactive Waste Agency) Corresponding Author